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Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan in situ in the living body

The ability to measure drugs in the body rapidly and in real time would advance both our understanding of pharmacokinetics and our ability to optimally dose and deliver pharmacological therapies. To this end, we are developing electrochemical aptamer-based (E-AB) sensors, a seconds-resolved platform...

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Autores principales: Idili, Andrea, Arroyo-Currás, Netzahualcóyotl, Ploense, Kyle L., Csordas, Andrew T., Kuwahara, Masayasu, Kippin, Tod E., Plaxco, Kevin W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6788505/
https://www.ncbi.nlm.nih.gov/pubmed/31673321
http://dx.doi.org/10.1039/c9sc01495k
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author Idili, Andrea
Arroyo-Currás, Netzahualcóyotl
Ploense, Kyle L.
Csordas, Andrew T.
Kuwahara, Masayasu
Kippin, Tod E.
Plaxco, Kevin W.
author_facet Idili, Andrea
Arroyo-Currás, Netzahualcóyotl
Ploense, Kyle L.
Csordas, Andrew T.
Kuwahara, Masayasu
Kippin, Tod E.
Plaxco, Kevin W.
author_sort Idili, Andrea
collection PubMed
description The ability to measure drugs in the body rapidly and in real time would advance both our understanding of pharmacokinetics and our ability to optimally dose and deliver pharmacological therapies. To this end, we are developing electrochemical aptamer-based (E-AB) sensors, a seconds-resolved platform technology that, as critical for performing measurements in vivo, is reagentless, reversible, and selective enough to work when placed directly in bodily fluids. Here we describe the development of an E-AB sensor against irinotecan, a member of the camptothecin family of cancer chemotherapeutics, and its adaptation to in vivo sensing. To achieve this we first re-engineered (via truncation) a previously reported DNA aptamer against the camptothecins to support high-gain E-AB signaling. We then co-deposited the modified aptamer with an unstructured, redox-reporter-modified DNA sequence whose output was independent of target concentration, rendering the sensor's signal gain a sufficiently strong function of square-wave frequency to support kinetic-differential-measurement drift correction. The resultant, 200 μm-diameter, 3 mm-long sensor achieves 20 s-resolved, multi-hour measurements of plasma irinotecan when emplaced in the jugular veins of live rats, thus providing an unprecedentedly high-precision view into the pharmacokinetics of this class of chemotherapeutics.
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spelling pubmed-67885052019-10-31 Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan in situ in the living body Idili, Andrea Arroyo-Currás, Netzahualcóyotl Ploense, Kyle L. Csordas, Andrew T. Kuwahara, Masayasu Kippin, Tod E. Plaxco, Kevin W. Chem Sci Chemistry The ability to measure drugs in the body rapidly and in real time would advance both our understanding of pharmacokinetics and our ability to optimally dose and deliver pharmacological therapies. To this end, we are developing electrochemical aptamer-based (E-AB) sensors, a seconds-resolved platform technology that, as critical for performing measurements in vivo, is reagentless, reversible, and selective enough to work when placed directly in bodily fluids. Here we describe the development of an E-AB sensor against irinotecan, a member of the camptothecin family of cancer chemotherapeutics, and its adaptation to in vivo sensing. To achieve this we first re-engineered (via truncation) a previously reported DNA aptamer against the camptothecins to support high-gain E-AB signaling. We then co-deposited the modified aptamer with an unstructured, redox-reporter-modified DNA sequence whose output was independent of target concentration, rendering the sensor's signal gain a sufficiently strong function of square-wave frequency to support kinetic-differential-measurement drift correction. The resultant, 200 μm-diameter, 3 mm-long sensor achieves 20 s-resolved, multi-hour measurements of plasma irinotecan when emplaced in the jugular veins of live rats, thus providing an unprecedentedly high-precision view into the pharmacokinetics of this class of chemotherapeutics. Royal Society of Chemistry 2019-07-22 /pmc/articles/PMC6788505/ /pubmed/31673321 http://dx.doi.org/10.1039/c9sc01495k Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Idili, Andrea
Arroyo-Currás, Netzahualcóyotl
Ploense, Kyle L.
Csordas, Andrew T.
Kuwahara, Masayasu
Kippin, Tod E.
Plaxco, Kevin W.
Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan in situ in the living body
title Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan in situ in the living body
title_full Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan in situ in the living body
title_fullStr Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan in situ in the living body
title_full_unstemmed Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan in situ in the living body
title_short Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan in situ in the living body
title_sort seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan in situ in the living body
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6788505/
https://www.ncbi.nlm.nih.gov/pubmed/31673321
http://dx.doi.org/10.1039/c9sc01495k
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